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Spacecraft capture system based on nozzle capture and satellite-rocket docking ring locking

A technology for docking rings and spacecraft, which is applied in the directions of aerospace vehicles, docking devices for aerospace vehicles, and aircraft, and can solve the problems of poor versatility and adaptability of spacecraft capture systems.

Active Publication Date: 2019-01-04
HARBIN INST OF TECH +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] The purpose of the present invention is to solve the problem of poor versatility and adaptability of the spacecraft capture system. The present invention provides a spacecraft capture system based on nozzle capture and star-rocket docking ring locking

Method used

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  • Spacecraft capture system based on nozzle capture and satellite-rocket docking ring locking
  • Spacecraft capture system based on nozzle capture and satellite-rocket docking ring locking
  • Spacecraft capture system based on nozzle capture and satellite-rocket docking ring locking

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specific Embodiment

[0079] reference image 3 The capturing device 4 of this embodiment includes: an airbag storage mechanism 4-2, a locking airbag 4-3, a global camera 4-4, three axial rangefinders 4-5, a buffer airbag 4-6, Transmission mechanism 4-7, air supply system 4-8, three radial rangefinders 4-9, gas cylinder 4-10, attitude thruster 4-11, driving device 4-12, housing 4-13, propulsion Thruster 4-14, controller and docking device 4-15.

[0080] Among them, the airbag storage mechanism 4-2 stores three locked airbags 4-3; the axial rangefinder 4-5 and the radial rangefinder 4-9 use laser rangefinders; the attitude thruster 4-11 and propulsion Thruster 4-14 adopts cold jet thruster.

[0081] Airbag storage mechanism 4-2, locking airbag 4-3, buffer airbag 4-6, transmission mechanism 4-7, air supply system 4-8, gas cylinder 4-10, driving device 4-12, housing 4- 13 compose an airbag device;

[0082] The front end of the housing 4-13 is a tapered surface, the cushion airbag 4-6 is located on the out...

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Abstract

In order to solve the problem of poor versatility and adaptability of spacecraft acquisition system, the invention provides a spacecraft capture system based on nozzle capture and satellite-rocket docking ring locking, which relates to the technical field of non-cooperative spacecraft acquisition. The invention comprises a six-degree-of-freedom adjusting device, which is used for adjusting the position and the posture of the locking device so as to make the locking device contact with the butt joint surface of the satellite-arrow butt joint ring; a capture device, when opposite to the nozzle position, is used for detecting the position of the nozzle throat of the spacecraft, controlling the airbag to enter the nozzle throat of the spacecraft and inflate the airbag, and using the airbag tolock the nozzle throat to realize capture; a locking device for locking the outer edge of the satellite-arrow docking ring from a radial direction using a locking member when the locking device is incontact with the docking surface of the satellite-arrow docking ring. The invention releases the capturing device to the nozzle throat of the target, and captures the target nozzle; by recovering thecapture device, the docking range of the capture device to the locking device is tightened; the locking device locks the target's satellite-arrow docking ring through the locking member.

Description

Technical field [0001] The invention relates to a spacecraft capture system, in particular to a spacecraft capture system based on nozzle capture and star and arrow docking ring locking, and relates to the technical field of non-cooperative spacecraft capture. Background technique [0002] After entering the 21st century, with the vigorous development of space technology, countries around the world are developing and exploring deep space more and more frequently, and space systems are becoming more and more complex. However, the risk of aerospace technology is very high. While bringing huge benefits, it will also cause huge losses due to spacecraft launch failures, orbital failures, and limited spacecraft life. Therefore, in order to minimize the losses caused by spacecraft failures or failures, it is necessary to carry out many on-orbit service technology researches aimed at extending the life of spacecraft and removing orbital debris (such as abandoned spacecraft and space debr...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B64G1/64
CPCB64G1/646
Inventor 刘延芳王旭齐乃明郭骁范庆玲袁秋帆谭新
Owner HARBIN INST OF TECH
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